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1SF0

BACKBONE SOLUTION STRUCTURE OF MIXED ALPHA/BETA PROTEIN PF1061

Summary for 1SF0
Entry DOI10.2210/pdb1sf0/pdb
NMR InformationBMRB: 6187
Descriptorhypothetical protein PF1061 (1 entity in total)
Functional Keywordsresidual dipolar couplings, structural genomics, psi, protein structure initiative, southeast collaboratory for structural genomics, secsg, unknown function
Biological sourcePyrococcus furiosus
Total number of polymer chains1
Total formula weight8610.88
Authors
Prestegard, J.H.,Mayer, K.L.,Valafar, H.,Southeast Collaboratory for Structural Genomics (SECSG) (deposition date: 2004-02-19, release date: 2004-04-13, Last modification date: 2024-05-01)
Primary citationValafar, H.,Mayer, K.L.,Bougault, C.M.,Leblond, P.D.,Jenney, F.E.,Brereton, P.S.,Adams, M.W.,Prestegard, J.H.
Backbone solution structures of proteins using residual dipolar couplings: Application to a novel structural genomics target.
J.STRUCT.FUNCT.GENOM., 5:241-254, 2005
Cited by
PubMed Abstract: Structural genomics (or proteomics) activities are critically dependent on the availability of high-throughput structure determination methodology. Development of such methodology has been a particular challenge for NMR based structure determination because of the demands for isotopic labeling of proteins and the requirements for very long data acquisition times. We present here a methodology that gains efficiency from a focus on determination of backbone structures of proteins as opposed to full structures with all sidechains in place. This focus is appropriate given the presumption that many protein structures in the future will be built using computational methods that start from representative fold family structures and replace as many as 70% of the sidechains in the course of structure determination. The methodology we present is based primarily on residual dipolar couplings (RDCs), readily accessible NMR observables that constrain the orientation of backbone fragments irrespective of separation in space. A new software tool is described for the assembly of backbone fragments under RDC constraints and an application to a structural genomics target is presented. The target is an 8.7 kDa protein from Pyrococcus furiosus, PF1061, that was previously not well annotated, and had a nearest structurally characterized neighbor with only 33% sequence identity. The structure produced shows structural similarity to this sequence homologue, but also shows similarity to other proteins, which suggests a functional role in sulfur transfer. Given the backbone structure and a possible functional link this should be an ideal target for development of modeling methods.
PubMed: 15704012
DOI: 10.1007/s10969-005-4899-5
PDB entries with the same primary citation
Experimental method
SOLUTION NMR
Structure validation

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数据于2024-10-30公开中

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